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通过电子显微镜对噬菌体λ异源双链DNA分子中的缺失和替换进行定位

Mapping of deletions and substitutions in heteroduplex DNA molecules of bacteriophage lambda by electron microscopy.

作者信息

Westmoreland B C, Szybalski W, Ris H

出版信息

Science. 1969 Mar 21;163(3873):1343-8. doi: 10.1126/science.163.3873.1343.

Abstract

Electron microscopy of heteroduplex DNA molecules, composed of one strand of Escherichia coli phage lambda(+) DNA annealed to the complementary DNA strand of a lambda deletion or substitution mutant, permits visualization, as well as precise measurements and mapping, of the unpaired single-stranded regions of nonhomology in the otherwise double-stranded molecules. In the lambdab2 mutant, the central segment (13 percent) of the lambda(+) DNA molecule is shown to be deleted. In the hybrid phages lambda(i434) and lambda(i21) a segment of the right arm of the lambda(+) genome (5.5 or 7.6 to 9 percent) is replaced by the corresponding immunity regions of phage 434 (3.3 percent or phage 21 (4 percent) DNA. The b5 region in the lambdab5 mutant appears to be identical to the i(21) segment. From these data it is possible to estimate the size and posiion of those lambda genes which are replaced by the i(434) and i(21) segments. The method permits preparing complete physical maps of viral genomes with a precision heretofore unattainable.

摘要

由一条大肠杆菌噬菌体λ(+) DNA链与λ缺失或取代突变体的互补DNA链退火形成的异源双链DNA分子的电子显微镜观察,能够对原本双链分子中未配对的非同源单链区域进行可视化观察,以及精确测量和定位。在λb2突变体中,λ(+) DNA分子的中央部分(13%)被证明缺失。在杂交噬菌体λ(i434)和λ(i21)中,λ(+)基因组右臂的一段(5.5或7.6至9%)被噬菌体434的相应免疫区域(3.3%)或噬菌体21(4%)的DNA所取代。λb5突变体中的b5区域似乎与i(21)片段相同。根据这些数据,可以估计被i(434)和i(21)片段取代的那些λ基因的大小和位置。该方法能够以前所未有的精度制备病毒基因组的完整物理图谱。

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